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首页> 外文期刊>Canadian Journal of Plant Science >Non-destructive estimation of potato leaf chlorophyll and protein contents from hyperspectral measurements using the PROSPECT radiative transfer model.
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Non-destructive estimation of potato leaf chlorophyll and protein contents from hyperspectral measurements using the PROSPECT radiative transfer model.

机译:使用PROSPECT辐射转移模型通过高光谱测量对马铃薯叶片叶绿素和蛋白质含量进行无损估计。

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摘要

Optimizing nitrogen (N) fertilization in potato (Solanum tuberosum L.) production by in-season measurements of potato N status may improve fertilizer N-use efficiency. Hyperspectral leaf reflectance and transmittance measurements can be used to assess potato N status by estimating leaf chlorophyll or N contents. This study evaluated the ability of the inverted PROSPECT radiative transfer model to predict leaf chlorophyll and N (as protein) contents. Trials were conducted with Russet Burbank and Shepody potato cultivars under different N fertility rates (0 to 300 kg N ha-1) in 2001 and 2002. Leaf reflectance and transmittance, leaf chlorophyll content, and leaf protein content were measured. Leaf chlorophyll and protein content correlated significantly (r=0.16*, n=584), but the relationship was strongly dependent on sampling date (r=0.55* to 0.92*). Chlorophyll content was predicted with reasonable accuracy by the model, particularly in 2002. The low estimation accuracy in 2001 was probably related to sample variability induced by prolonged drought conditions. Protein content could not be predicted with any degree of accuracy by the model. The relative success of the PROSPECT model to predict chlorophyll content, and the good correlation between leaf chlorophyll and leaf N, suggests that it might be used as a component of a more complex leaf-canopy reflectance model to estimate chlorophyll content from reflectance spectra at the canopy level..
机译:通过季节测量马铃薯的氮素状况来优化马铃薯(Solanum tuberosum L.)生产中的氮肥施用量,可以提高肥料氮素的利用效率。高光谱叶片的反射率和透射率测量可用于通过估计叶片的叶绿素或氮含量来评估马铃薯的氮状况。这项研究评估了倒置的PROSPECT辐射传递模型预测叶片叶绿素和N(作为蛋白质)含量的能力。在2001和2002年分别对Russet Burbank和Shepody马铃薯品种在不同的氮肥水平(0至300 kg N ha-1)下进行了试验。测量了叶片的反射率和透射率,叶绿素含量和叶片蛋白质含量。叶片的叶绿素和蛋白质含量显着相关(r = 0.16 *,n = 584),但这种关系在很大程度上取决于采样日期(r = 0.55 *至0.92 *)。该模型预测叶绿素含量具有合理的准确性,尤其是在2002年。2001年较低的估计准确性可能与长期干旱条件引起的样品变异性有关。该模型无法准确预测蛋白质含量。 PROSPECT模型预测叶绿素含量的相对成功,以及叶绿素和叶氮之间的良好相关性,表明它可以用作更复杂的叶冠反射率模型的组成部分,以从植物的反射光谱估算叶绿素含量。顶篷水平

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